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    • 3. 发明专利
    • STORAGE AND CARRYING SYSTEM FOR OF HEAT
    • JPH1194314A
    • 1999-04-09
    • JP25343997
    • 1997-09-18
    • NIPPON KOKAN KKTOSHIBA CORP
    • GONDA KINJIKAJIKAWA TAKENOBUOGATA MASARUMUROTA KAZUMASAWATANABE YUTAKA
    • F24F5/00
    • PROBLEM TO BE SOLVED: To carry a heating medium at a low cost without being restricted by distances, by storing heat energy in the heating medium, and by carrying the heating medium in which this heat energy is stored, without the intervention of piping. SOLUTION: When the heat energy of cold sea water is stored in a heating medium to be transported, the batch in which a cold storage material is stored is loaded on a trailer. In this cold storage material, the heat energy of cold sea water is stored through a heat exchanger. The batch in which this cold heat is stored is carried to the places which require cold heat, and then the stored cold heat is taken out to be used. In this storage and carrying system of heat, the heating medium used for storing heat and heat storage facilitates the heat storage device by using the medium that can store heat sufficiently even though being small-sized. Moreover, since a pipeline is not used for carriage and transportation, the equipment cost can be decreased. If all the natural energy/unused energy is transformed into heat so as to accumulate heat, the system can be expected as the heat supply center for the community.
    • 5. 发明专利
    • ICE THERMAL STORAGE APPARATUS
    • JPH07229637A
    • 1995-08-29
    • JP1953394
    • 1994-02-16
    • TOSHIBA CORP
    • WATANABE YUTAKA
    • F28D20/00F24F5/00F25C1/00
    • PURPOSE:To provide a thermal storage conveying system in which sherbetlike ice can be input to a tube and smoothly conveyed by a pump and which has high reliability and efficiency. CONSTITUTION:An icemaking cylinder 1 which inputs water and antifreeze solution being non-water soluble and having larger specific weight than water from a vertex 1a to make fine ice particles is vertically provided, an antifreeze solution recovering unit 5 for recovering only antifreeze solution is provided at its lower part, a riser tube 13 is vertically provided to communicate with the lower part of the cylinder 1 and the upper part of the unit 5 to rise water and ice particles flowing down in the cylinder 1. A conveying tube 21 is connected to a downstream side of the tube 13 to convey two-phase flow of the water and the ice particles to a predetermined position and to feed down the two-phase flow of the water and the ice particles flowing down from an opening end of the tube 21 to an ice thermal storage water tank 20 to be stored.
    • 6. 发明专利
    • HEAT EXCHANGER DEVICE
    • JPH07159059A
    • 1995-06-20
    • JP30073993
    • 1993-12-01
    • TOSHIBA CORP
    • WATANABE YUTAKA
    • F28C3/04
    • PURPOSE:To utilize environmental water energy stably for a long period of time by introducing a non-water-soluble liquid medium of high specific gravity which has been heat-exchanged with environmental water into a heat exchanger to effect a heat exchanging action, thereby reducing fouling on the heating surface in the heat exchanger. CONSTITUTION:A non-water-soluble liquid 6 of high specific gravity stored in a recovery section 9 has been heated approximately to a temperature of river water (heat source water), so that the heat energy having been given from the river water is taken up by a heat pump 10 and the liquid 6 whose temperature has become low flows to a distributor 5. Fine sands and relatively heavy solid fine particles contained in the river water are removed at a separator 11A serving also as a filter provided in a circulation system 11 of the liquid 6. The heat-source water 3 from which a part of its heat energy has been removed by the liquid 6 at a heat exchanger tank 4b becomes lower temperature. And when the liquid 6 naturally falls in the tank 4b under the force of gravity, it flows along a passage 8 in the form of film, so that fine droplets are not generated.
    • 9. 发明专利
    • LATENT HEAT ACCUMULATING DEVICE
    • JPH0682066A
    • 1994-03-22
    • JP23328892
    • 1992-09-01
    • TOSHIBA CORP
    • NOMA CHIKAKOWATANABE YUTAKA
    • F24F5/00F28D20/00
    • PURPOSE:To save the resource of liquid refrigerant for an ice heat accumulating system and save the power for a refrigerant circulating pump. CONSTITUTION:The device is constituted of a heat accumulating tank 1, effecting ice making and heat accumulation, refrigerant solution 3 for making ice, a heat exchanger 9 for effecting heat exchange to cool the refrigerant solution 3, a pump 8 for circulating the refrigerant solution 3, an ice making and heat accumulating cycle unit, connecting these devices through a pipeline 7, second refrigerant solution 10, effecting heat exchange between the refrigerant solution 3 to cool the refrigerant solution 3, a refrigerating machine 2 for cooling the heat exchanger 9 and the refrigerant solution 10, a pump 81 for circulating the refrigerant solution 10, and a refrigerating cycle unit, connecting these devices through another pipeline 71. The refrigerant solution 3 for effecting ice making is not circulated directly to the refrigerating machine 2 whereby the resource saving of the refrigerant solution 3 and the power saving of the pump 8 can be contrived while the arrangement of the heat accumulating tank 1 and the refrigerating machine 2 in a machine room can be effected arbitrarily.
    • 10. 发明专利
    • COOLING-HEATING HEAT SUPPLY PLANT
    • JPH04281130A
    • 1992-10-06
    • JP4367991
    • 1991-03-08
    • TOSHIBA CORP
    • WATANABE YUTAKA
    • F24D11/02F24F5/00
    • PURPOSE:To enable the increase of heat accumulating capacity of a plant which is provided with a heat accumulating tank for storing cool and/or hot water for regional cooling and heating by a method wherein water supply is possible only when water temperature pumped up from the heat accumulating tank or water temperature manufactured by a heat pump is superfluous. CONSTITUTION:In a heat accumulating tank 3, water flowing into a heat pump 1 mainly during night is adjusted in the volume by a flowrate control valve 5, stored cold at a manufactured cool water temperature of 1 deg.C, and after completion of night heat accumulation, the water temperature is returned to a normal value of 6 deg.C. As a volume of manufactured water by the heat pump 1 is substantially constant, an intake volume from the heat accumulated water volume, if a required quantity of water is determined by a user 2, is determined according to a prescribed formula based on a mixture ratio with an intake volume from a bypass line 17 from a detection result of a return water temperature and the heat accumulated water volume at that time, and at the same time, an absolute volume can be obtained. Then, opening degrees of a flowrate control valves 8 and 7 are adjusted based on these values, a part of the return water and the intake water from the heat accumulating tank 3 or manufactured water of the heat pump 1 are mixed and fed to the user 2.